IP Library Granted Patent US 10,921,386
Granted Patent B2
US 10,921,386 · App. 16/447,933 · Granted Feb 16, 2021

Methods and devices for calculating winding currents at a delta side for a transformer

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Quick Facts
Patent No.
US 10,921,386
App. No.
16/447,933
Granted
Feb 16, 2021
Kind
B2
Abstract

The present disclosure relates to methods and devices for calculating winding currents at a delta side for a transformer. The transformer has two or more windings, with a first winding being a delta connected winding. The method includes obtaining line currents measured with measurement equipment associated with lines connected with the windings. The method further includes calculating zero sequence currents for at least a second winding, from the line currents of a corresponding line. The method further includes calculating zero sequence currents for the first winding, based on the zero sequence currents for at least the second winding, a phase displacement between the windings, and a turns ratio associated with the windings. The winding currents is calculated from the zero sequence currents of the first winding, and the line currents of a corresponding line.

Claims (26)

1. A method for calculating winding currents at a delta side for a transformer comprising two or more windings connected with two or more lines, with at least a first winding of the two or more windings being a delta connected winding, the method being performed with a device associated with the transformer, the method comprising:

obtaining line currents measured with measurement equipment associated with the two or more lines;

calculating zero sequence currents for at least a second winding of the two or more windings of the transformer, from the line currents measured at a corresponding line connected with at least the second winding;

calculating zero sequence currents for the first winding based on (i) the zero sequence currents calculated for at least the second winding, (ii) a phase displacement between the two or more windings, and (iii) a turns ratio associated with the two or more windings of the transformer;

calculating winding currents for the first winding from the zero sequence currents calculated for the first winding and from the line currents measured at a corresponding line connected with the first winding; and

rendering the calculated winding currents for one or more monitoring, protection, and control operations associated with the transformer.

2. The method of claim 1 , wherein the transformer has three windings comprising the first winding, the second winding, and a third winding, and wherein the zero sequence currents for the first winding are calculated based on (i) the zero sequence currents calculated for the second and third windings, (ii) the phase displacement between the first and second windings, (iii) the phase displacement between the first and third windings, (iv) the turns ratio between the first and second windings, and (v) the turns ratio between the first and third windings.

3. The method of claim 1 , wherein the transformer has two windings consisting of the first and second windings, and wherein the zero sequence currents for the first winding are calculated based on (i) the zero sequence currents calculated for the second winding, (ii) the phase displacement between the first and second windings, and (iii) the turns ratio between the first and second windings.

4. The method of claim 1 , wherein the second winding is a star connected winding.

5. The method of claim 1 , wherein the transformer has three windings comprising the first winding, the second winding and a third winding, and wherein each of the second and third windings is one of a star connected winding and a wye connected winding.

6. The method of claim 1 , wherein rendering the calculated winding currents for one or more monitoring, protection, and control operations comprises displaying the calculated winding currents on an interface associated with the device.

7. The method of claim 1 , wherein rendering the calculated winding currents for one or more monitoring, protection, and control operations comprises generating a trip signal based on the calculated winding currents.

8. The method of claim 1 , wherein rendering the calculated winding currents for one or more monitoring, protection, and control operations comprises calculating a health index associated with the first winding based on the calculated winding currents.

9. A device for calculating winding currents at a delta side for a transformer comprising two or more windings connected with two or more lines, with at least a first winding of the two or more windings being a delta connected winding, the device comprising:

an input interface configured to obtain line currents measured with measurement equipment associated with the two or more lines;

a current calculator configured to:

calculate zero sequence currents for at least a second winding of the two or more windings of the transformer, from the line currents measured at a corresponding line connected with at least the second winding;

calculate zero sequence currents for the first winding based on (i) the zero sequence currents calculated for at least the second winding, (ii) a phase displacement between the two or more windings, and (iii) a turns ratio associated with the two or more windings of the transformer; and

calculate winding currents for the first winding from the zero sequence currents calculated for the first winding and from the line currents measured at a corresponding line connected with the first winding; and

an output interface configured to render the calculated winding currents for one or more monitoring, protection, and control operations associated with the transformer.

10. The device of claim 9 , wherein the output interface is a display configured to display the calculated winding current values.

11. The device of claim 9 , wherein the output interface is configured to generate a trip signal for operating a switching device associated with the transformer.

12. The device of claim 9 , wherein the transformer has three windings comprising the first winding, the second winding, and a third winding, and wherein the current calculator is configured to calculate the zero sequence currents for the first winding based on (i) the zero sequence currents calculated for the second and third windings, (ii) the phase displacement between the first and second windings, (iii) the phase displacement between the first and third windings, (iv) the turns ratio between the first and second windings, and (v) the turns ratio between the first and third windings.

13. The device of claim 9 , wherein the transformer has two windings consisting of the first and second windings, and wherein the current calculator is configured to calculate the zero sequence currents for the first winding based on (i) the zero sequence currents calculated for the second winding, (ii) the phase displacement between the first and second windings, and (iii) the turns ratio between the first and second windings.

14. The device of claim 9 , wherein the second winding is a star connected winding.

15. The device of claim 9 , wherein the transformer has three windings comprising the first winding, the second winding and a third winding, and wherein each of the second and third windings is one of a star connected winding and a wye connected winding.

Assignments (4)
MERGER Recorded Nov 13, 2023
From: HITACHI ENERGY SWITZERLAND AG
To: HITACHI ENERGY LTD
Reel/Frame 065548/0905 →
CHANGE OF NAME Recorded Dec 31, 2021
From: ABB POWER GRIDS SWITZERLAND AG
To: HITACHI ENERGY SWITZERLAND AG
Reel/Frame 058666/0540 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2020
From: ABB SCHWEIZ AG
To: ABB POWER GRIDS SWITZERLAND AG
Reel/Frame 052916/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2019
From: PABBATHI, SANDEEP; S, PRABAKARAN; MATURU, SURESH
To: ABB SCHWEIZ AG
Reel/Frame 049882/0511 →